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41.
嘉兴农村不同土地利用方式下沟渠底泥中的氮磷形态分布特征 总被引:3,自引:0,他引:3
沟渠是农田氮、磷营养物质排入地表水体的通道. 对嘉兴大田、集约化菜地、集约化果园、集约化养殖场4种土地利用方式下的农村沟渠0~5 cm表层底泥氮、磷的形态分布特征进行了研究. 结果表明:67个沟渠底泥样品的w(全氮)为1 560~7 480 mg/kg,其中w(交换态氮)为31.15~704.38 mg/kg,占w(全氮)的1.29%~10.01%;交换态氮中以铵态氮为主,占w(交换态氮)的62.15%~100%. 沟渠底泥样品的w(全磷)为580~6 420 mg/kg,w(碳酸氢钠溶解磷)为19.53~359.72 mg/kg,占w(全磷)的2.05%~18.96%;w(水溶性磷)为0.29~18.88 mg/kg,占w(碳酸氢钠溶解磷)的1.11%~14.63%. 土地利用方式对沟渠底泥氮、磷的形态分布有显著影响(P<0.01),集约化养殖场沟渠底泥中的w(全氮), w(交换态氮),w(铵态氮), w(硝态氮), w(交换态氮)/w(全氮), w(全磷), w(水溶性磷), w(碳酸氢钠溶解磷)均显著高于其他土地利用方式. 底泥w(全氮), w(交换态氮), w(铵态氮)和w(硝态氮)两两间以及w(全磷), w(水溶性磷), w(碳酸氢钠溶解磷)两两间均在α0.01时显著相关,w(全磷)与w(碳酸氢钠溶解磷)的相关性(r0.81,P<0.01)好于与w(水溶性磷)的相关性(r0.51,P<0.01). 相似文献
42.
武汉市汉铁高级中学(以下简称汉铁高中)创建于1947年,是湖北省首批重点中学、湖北省示范高中。汉铁高中秉承“绿色、人文、科学、创新”的办学理念,重点推进“教育国际化、教育多元化、教育优质化、教育人文化”的发展战略, 相似文献
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Comparison of quartz sand, anthracite, shale and biological ceramsite for adsorptive removal of phosphorus from aqueous solution 总被引:1,自引:0,他引:1
The choice of substrates with high phosphorus adsorption capacity is vital for sustainable phosphorus removal from waste water in constructed wetlands. In this study, four substrates were used: quartz sand, anthracite, shale and biological ceramsite. These substrate samples were characterized by X- ray diffractometry and scanning electron microscopy studies for their mineral components (chemical components) and surface characteristics. The dynamic experimental results revealed the following ranking order for total phosphorus (TP) removal efficiency: anthracite 〉 biological ceramsite 〉 shale 〉 quartz sand. The adsorptive removal capacities for TP using anthracite, biological ceramsite, shale and quartz sand were 85.87, 81.44, 59.65, and 55.98 mg/kg, respectively. Phosphorus desorption was also studied to analyze the substrates' adsorption efficiency in wastewater treatment as well as the substrates' ability to be reused for treatment. It was noted that the removal performance for the different forms of phosphorus was dependent on the nature of the substrate and the adsorption mechanism. A comparative analysis showed that the removal of particulate phosphorus was much easier using shale. Whereas anthracite had the highest soluble reactive phosphorus (SRP) adsorptive capacity, biological ceramsite had the highest dissolved organic phosphorus (DOP) removal capacity. Phosphorus removal by shale and biological ceramsite was mainly through chemical adsorption, precipitation or biological adsorption. On the other hand, phosphorus removal through physical adsorption (electrostatic attraction or ion exchange) was dominant in anthracite and quartz sand. 相似文献
45.
活化铁锰结核的除氟性能研究 总被引:4,自引:0,他引:4
通过批实验研究接触反应时间、温度、共存阴离子对除氟效果的影响.结果表明,接触反应时间为48 h时,吸附都将近平衡.温度越高,越有利于氟离子的吸附.Langmuir和Freundlich吸附等温模式都可以较好地描述氟离子的吸附特性.热力学分析发现活化铁锰结核对氟的吸附为自发的吸热反应.当其他阴离子存在时,会对吸附造成不利影响.柱实验结果表明,活化铁锰结核动态除氟效果很好,性能稳定,机械强度高,易洗脱再生,且洗脱再生后饱和吸附量明显增大.出水中铁、锰含量不超过我国生活饮用水卫生标准.用Thomas模型分析,得到的平均饱和吸附量可达1.340 mg/g.X射线衍射和扫描电镜分析表明,经FeCl3活化的铁锰结核表面附着大量铁的氧化物或氢氧化物.这些铁的氢氧化物或氧化物对水中氟离子的去除起重要作用. 相似文献
46.
3株反硝化聚磷菌的分离与鉴定 总被引:5,自引:0,他引:5
通过烛缸法培养富集、分离,结合除磷试验、硝酸盐还原产气试验及异染颗粒和PHB颗粒染色辅助检验相结合的方法筛选,得到3株具有较高脱氮除磷效率的反硝化聚磷菌DNPA8, DNPA9和DNPA10。在富氮富磷培养基中培养48 h,各菌株的脱氮率均大于75%,除磷率均大于78%。采用多相分类的方法确定了3株反硝化聚磷菌的分类地位,DNPA8为嗜麦芽寡养单胞菌,DNPA9为水生丛毛单胞菌属首次发现的反硝化聚磷菌;DNPA10为约翰逊氏不动杆菌。该研究结果为富营养化水体的治理提供了有效的菌种资源。 相似文献
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49.
随着污水处理事业的发展,生物脱氮除磷技术在国内受到广泛重视和应用。本文仅以青岛市李村河污水处理厂脱氮除磷工艺为例,讨论生物脱氮除磷技术及应用。 相似文献
50.
Constructed wetlands have emerged as a viable option for helping to solve a wide range of water quality problems. However, heavy
metals adsorbed by substrates would decrease the growth of plants, impair the functions of wetlands and eventually result in a failure
of contaminant removal. Typha latifolia L., tolerant to heavy metals, has been widely used for phytoremediation of Pb/Zn mine tailings
under waterlogged conditions. This study examined e ects of iron as ferrous sulfate (100 and 500 mg/kg) and lead as lead nitrate (0,
100, 500 and 1000 mg/kg) on phosphorus utilization and microbial community structure in a constructed wetland. Wetland plants (T.
latifolia) were grown for 8 weeks in rhizobags filled with a paddy soil under waterlogged conditions. The results showed that both the
amount of iron plaque on the roots and phosphorus adsorbed on the plaque decreased with the amount of lead addition. When the ratio
of added iron to lead was 1:1, phosphorus utilized by plants was the maximum. Total amount of phospholipids fatty acids (PLFAs)
was 23%–59% higher in the rhizosphere soil than in bulk soil. The relative abundance of Gram-negative bacteria, aerobic bacteria, and
methane oxidizing bacteria was also higher in the rhizosphere soil than in bulk soil, but opposite was observed for other bacteria and
fungi. Based on cluster analysis, microbial communities were mostly controlled by the addition of ferrous sulfate and lead nitrate in
rhizosphere and bulk soil, respectively. 相似文献